Journal of Physics: Complexity (Jan 2024)

Hopf bifurcations of twisted states in phase oscillators rings with nonpairwise higher-order interactions

  • Christian Bick,
  • Tobias Böhle,
  • Oleh E Omel’chenko

DOI
https://doi.org/10.1088/2632-072X/ad5635
Journal volume & issue
Vol. 5, no. 2
p. 025026

Abstract

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Synchronization is an essential collective phenomenon in networks of interacting oscillators. Twisted states are rotating wave solutions in ring networks where the oscillator phases wrap around the circle in a linear fashion. Here, we analyze Hopf bifurcations of twisted states in ring networks of phase oscillators with nonpairwise higher-order interactions. Hopf bifurcations give rise to quasiperiodic solutions that move along the oscillator ring at nontrivial speed. Because of the higher-order interactions, these emerging solutions may be stable. Using the Ott–Antonsen approach, we continue the emergent solution branches which approach anti-phase type solutions (where oscillators form two clusters whose phase is π apart) as well as twisted states with a different winding number.

Keywords